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1.5 Tesla augmented reality navigated interventional magnetic resonance imaging: paravertebral sympathetic plexus injections. Diagnostic and Interventional Radiology.(In Press).
Accuracy of Hybrid Tracking for a Novel MR-Guided Transrectal Prostate Interventional Device. 6th Interventional MRI Symposium. 143-145.(2006).
Acuracy Study of a MRI-guided Robotic System for Prostate Needle Placement. The International Journal of Medical Robotics and Computer Assisted Surgery (IJMRCAS).(2012).
Augmented reality visualisation using an image overlay system for MR-guided interventions: technical performance of spine injection procedures in human cadavers at 1.5 Tesla. European Radiology. 23, 235-245.(2013).
Augmented Reality Visualization Using Image Overlay Technology for MR-Guided Interventions: Cadaveric Bone Biopsy at 1.5 T. Investigative Radiology. 48,(2013).
Augmented Reality Visualization Using Image-Overlay for MR-guided Interventions: Performance Assessment of Paravertebral Sympathetic Perineural Injections in Cadavers at 1.5 Tesla. CARS 2012 Computer Assisted Radiology and Surgery. S509-S511.(2012).
Augmented Reality Visualization Using Image-Overlay for MR-Guided Interventions: Accuracy for Lumbar Spinal Procedures with a 1.5-Tesla MRI scanner.. American Journal of Roentgenology. 198, W266-73.(2012).
Augmented reality visualization using image-overlay for MR-guided interventions: assessment of accuracy for lumbar spinal procedures with a 1.5-Tesla MRI scanner. CIRSE 2011.(2011).
Augmented Reality Visualization Using Image-overlay for MR-guided Interventions: Assessment of Performance in Cadaveric Shoulder and Hip Arthrography. RSNA 97th Scientific Assembly and Annual Meeting.(2011).
Bootstrapped ultrasound calibration. Studies in health technology and informatics. 119, 61–66.(2006).
C-arm based Intra-operative Dosimetry in Prostate Brachytherapy. Annual Meeting of the American Association of Physicists in Medicine (AAPM).(2007).
Clinical Trials of a Robot Assistant for Ultrasound-Guided Prostate Brachytherapy. Abstract in Minimally Invasive Therapy, 20th International Conference of the Society for Medical Innovation and Technology (SMIT). 14, 213.(2008).
Controllable motorized devices for accurate percutaneous needle placement in soft tissue target. The Eleventh World Congress in Mechanism and Machine Science. 82-86.(2004).
Design and preliminary accuracy studies of an MRI-guided transrectal prostate intervention system. Medical image computing and computer-assisted intervention (MICCAI). 10, 59–67.(2007).
Design and Preliminary Clinical Studies of an MRI-Guided Transrectal Prostate Intervention System. 7th International Symposium on Interventional MRI. 6-10.(2008).
Design and Preliminary Clinical Studies of an MRI-Guided Transrectal Prostate Intervention System. International Society of Magnetic Resonance in Medicine (ISMRM).(2008).
Design of a Decoupled MRI-compatible Force Sensor using Fiber Bragg Grating Sensors for Robot-assisted Prostate Interventions. SPIE. 8671,(2013).
Design of a Prostate Needle Placement Robot in MRI Scanner. IEEE International Conference on Biomedical Robotics.(2006).
Design of a Robot for Transperineal Prostate Needle Placement in MRI Scanner. Procedings IEEE International Conference on Mechatronics. 592–597.(2006).
Design of a Teleoperated Needle Steering System for MRI-guided Prostate Interventions. IEEE International Conference on Biomedical Robotics and Biomechatronics (BioRob 2012).(2012).
Design, validation of an image-guided robot for small animal research. Medical image computing and computer-assisted intervention (MICCAI). 9, 50–57.(2006).
Development and Evaluation of an Actuated MRI-Compatible Robotic System for MRI-Guided Prostate Intervention. IEEE/ASME Transactions on Mechatronics. PP.(2011).
Development of a Pneumatic Robot for MRI-guided Transperineal Prostate Biopsy and Brachytherapy: New Approaches. IEEE International Conference on Robotics and Automation, ICRA 2010. 2580-2585.(2010).